4.1-9.5 Straight Solder Jack RG-402 0.141-inch Conformable Times Tflex 402 50 Ohm IP68

332106
Statut de la pièce: Active
Caractéristiques techniques du produit

Caractéristiques techniques du produit

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Applications
Low-PIM, Waterproof IP Rated
Body Finish
White Bronze
Body Material
Brass
Cable Type (Terminates To)
0.141-inch Semi-Rigid, 0.141-inch Conformable, RG-402, Times Tflex 402, Belden 1673A
Contact Finish
Silver
Contact Material
Beryllium Copper
Contact Termination
Solder
Country of Origin
CN
Coupling Mechanism
Threaded
ECCN
EAR99
Frequency (Max GHz)
3
Gender
Jack
HTS Code
8536.69.4010
Impedance (Ohms)
50
Insulator Material
PTFE
IP Rating
IP68
Isolated
No
Low PIM
Yes
Mating Cycles (Min)
500
Mil Qualified
Not Mil Qualified
Non Magnetic
Contains Magnetic Materials
Orientation
Straight
Panel Mounting Feature
Not Applicable
PFAS
Contains PFAS
Ports
1 (Single Port)
Size Category
Large
Temp (Max Degrees Celsius)
165
Temp (Min Degrees Celsius)
-65
Termination Style
Cable - Solder
Thread Direction
Standard
Voir des articles similaires
Tous les documents associés

Tous les documents associés

Titre du document Type Date de publication
332106 PDF Customer Drawing (Taille: 911,1 KB)
pdf
07/05/2026

Related Resources

The document "Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies" by David Weinstein of Amphenol Corporation discusses the causes, impacts, and measurement of Passive Intermodulation Distortion (PIM) in RF components. It explains how PIM is generated by non-linear mixing in passive devices like connectors and cables, causing unwanted signals that can interfere with communication systems. The paper outlines design guidelines to minimize PIM, including contact design, material choices and cleanliness, and describes testing methods to ensure low PIM performance​​.
White Paper: Passive Intermodulation Distortion
The document "Passive Intermodulation Distortion in Connectors, Cable and Cable Assemblies" by David Weinstein of Amphenol Corporation discusses the causes, impacts, and measurement of Passive Intermodulation Distortion (PIM) in RF components. It explains how PIM is generated by non-linear mixing in passive devices like connectors and cables, causing unwanted signals that can interfere with communication systems. The paper outlines design guidelines to minimize PIM, including contact design, material choices and cleanliness, and describes testing methods to ensure low PIM performance​​.
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